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output.generic.mlir

"builtin.module"() ({
  "llvm.func"() <{CConv = #llvm.cconv<ccc>, function_type = !llvm.func<i32 (i1, i32)>, linkage = #llvm.linkage<external>, sym_name = "weighted_then_cycle_0", unnamed_addr = 0 : i64, visibility_ = 0 : i64}> ({
  ^bb0(%arg8: i1, %arg9: i32):
    %9 = "arith.constant"() <{value = 0 : i32}> : () -> i32
    %10 = "arith.constant"() <{value = 1 : i32}> : () -> i32
    "cf.cond_br"(%arg8)[^bb1, ^bb2] <{branch_weights = array<i32: 7, 3>, operandSegmentSizes = array<i32: 1, 0, 0>}> : (i1) -> ()
  ^bb1:  // pred: ^bb0
    "cf.br"(%9)[^bb3] : (i32) -> ()
  ^bb2:  // pred: ^bb0
    "cf.br"(%10)[^bb3] : (i32) -> ()
  ^bb3(%11: i32):  // 2 preds: ^bb1, ^bb2
    %12 = "llvm.mlir.undef"() : () -> i32
    %13 = "arith.constant"() <{value = 1 : i32}> : () -> i32
    %14 = "arith.constant"() <{value = 0 : i32}> : () -> i32
    %15:2 = "scf.while"(%11, %12) ({
    ^bb0(%arg12: i32, %arg13: i32):
      %16 = "arith.cmpi"(%arg12, %arg9) <{predicate = 0 : i64}> : (i32, i32) -> i1
      %17:4 = "scf.if"(%16) ({
        "scf.yield"(%12, %arg12, %13, %14) : (i32, i32, i32, i32) -> ()
      }, {
        %19 = "arith.addi"(%arg12, %10) <{overflowFlags = #arith.overflow<none>}> : (i32, i32) -> i32
        "scf.yield"(%19, %12, %14, %13) : (i32, i32, i32, i32) -> ()
      }) : (i1) -> (i32, i32, i32, i32)
      %18 = "arith.trunci"(%17#3) <{overflowFlags = #arith.overflow<none>}> : (i32) -> i1
      "scf.condition"(%18, %17#0, %17#1) : (i1, i32, i32) -> ()
    }, {
    ^bb0(%arg10: i32, %arg11: i32):
      "scf.yield"(%arg10, %arg11) : (i32, i32) -> ()
    }) : (i32, i32) -> (i32, i32)
    "cf.br"()[^bb4] : () -> ()
  ^bb4:  // pred: ^bb3
    "llvm.return"(%15#1) : (i32) -> ()
  }) : () -> ()
  "llvm.func"() <{CConv = #llvm.cconv<ccc>, function_type = !llvm.func<i32 (i1, i1, i32, i32)>, linkage = #llvm.linkage<external>, sym_name = "plain_then_weighted_1", unnamed_addr = 0 : i64, visibility_ = 0 : i64}> ({
  ^bb0(%arg4: i1, %arg5: i1, %arg6: i32, %arg7: i32):
    %5 = "arith.constant"() <{value = 0 : i32}> : () -> i32
    %6 = "scf.if"(%arg4) ({
      "scf.yield"(%arg6) : (i32) -> ()
    }, {
      "scf.yield"(%arg7) : (i32) -> ()
    }) : (i1) -> i32
    "cf.br"(%6)[^bb1] : (i32) -> ()
  ^bb1(%7: i32):  // pred: ^bb0
    "cf.cond_br"(%arg5)[^bb2, ^bb3] <{branch_weights = array<i32: 5, 5>, operandSegmentSizes = array<i32: 1, 0, 0>}> : (i1) -> ()
  ^bb2:  // pred: ^bb1
    "cf.br"(%7)[^bb4] : (i32) -> ()
  ^bb3:  // pred: ^bb1
    "cf.br"(%7)[^bb4] : (i32) -> ()
  ^bb4(%8: i32):  // 2 preds: ^bb2, ^bb3
    "llvm.return"(%8) : (i32) -> ()
  }) : () -> ()
  "llvm.func"() <{CConv = #llvm.cconv<ccc>, function_type = !llvm.func<i32 (i1, i1, i32, i32)>, linkage = #llvm.linkage<external>, sym_name = "sequential_diamonds_2", unnamed_addr = 0 : i64, visibility_ = 0 : i64}> ({
  ^bb0(%arg0: i1, %arg1: i1, %arg2: i32, %arg3: i32):
    %0 = "arith.constant"() <{value = 0 : i32}> : () -> i32
    %1 = "arith.constant"() <{value = 1 : i32}> : () -> i32
    %2 = "scf.if"(%arg0) ({
      "scf.yield"(%arg2) : (i32) -> ()
    }, {
      "scf.yield"(%arg3) : (i32) -> ()
    }) : (i1) -> i32
    %3 = "scf.if"(%arg1) ({
      %4 = "arith.addi"(%2, %1) <{overflowFlags = #arith.overflow<none>}> : (i32, i32) -> i32
      "scf.yield"(%4) : (i32) -> ()
    }, {
      "scf.yield"(%2) : (i32) -> ()
    }) : (i1) -> i32
    "llvm.return"(%3) : (i32) -> ()
  }) : () -> ()
}) : () -> ()